HORIZON-CL5-2026-10-D6-03

Generative AI for smarter CCAM: enhancing perception, decision-making, and validation (CCAM Partnership)

Status
open for submission
Programme
Horizon Europe (HORIZON)
Action type
HORIZON Research and Innovation Actions
Opens
4 Jun 2026
Deadline
8 Oct 2026
Fetched
15 Jul 2026, 07:18 UTC
Plain-language summary

Research and Innovation Actions on Generative AI to enhance perception, decision-making, and validation in Connected, Cooperative and Automated Mobility (CCAM).

This call funds projects developing advanced Generative AI technologies to improve real-time perception and decision-making in automated vehicles. It focuses on safety, especially for vulnerable road users, and on virtual testing and validation of CCAM systems. Projects should integrate AI tools into existing mobility frameworks and address energy efficiency and security.

Likely relevant for

  • AI researchers in automotive and mobility sectors
  • Developers of perception and decision-making systems for automated vehicles
  • Researchers in connected and cooperative automated mobility (CCAM)
  • Experts in Generative AI applications and scenario generation
  • Entities involved in traffic management and remote control systems

Project signals

Focus on Level 3 and 4 automated vehicle servicesDevelopment of low-latency AI perception and decision-makingScenario generation for virtual testing and validationIntegration of GenAI into mobility technology developmentAlignment with European CCAM and AI strategies

What it funds

  • Development of trustworthy, energy-efficient Generative AI perception systems for CCAM
  • Enhancement of Vulnerable Road User safety via improved behaviour prediction
  • Virtual scenario generation for testing and validation of CCAM systems
  • Integration of GenAI tools into existing CCAM development and validation workflows
  • Collaboration with European Software-defined Vehicle and Connected and Autonomous Vehicle Alliance initiatives
  • Advancement of real-time decision-making systems with low latency and distributed computing

Expected outcomes

  • Availability of advanced, trustworthy, energy-efficient perception systems using Generative AI
  • Improved safety for Vulnerable Road Users through better behaviour and intention prediction
  • Enhanced robustness of CCAM systems via GenAI-generated testing scenarios
  • Clear understanding of GenAI benefits and limitations in CCAM
  • Harmonised tools and approaches for GenAI integration in mobility technology and traffic management

Who can apply / participate

  • Research organisations
  • Industry players in automotive and AI sectors
  • SMEs and large enterprises
  • Universities and academic institutions
  • Public bodies and infrastructure operators
  • Consortium formation rules must be checked in the call documents
  • Coordination with European partnerships such as CCAM and ADRA is expected
  • Eligible countries as per Horizon Europe Annex B
  • Legal entities established in China are not eligible for this destination
  • Projects must aim for TRL 5-6 by end of project
  • Use of Copernicus and/or Galileo/EGNOS data if satellite data involved
  • Compliance with EU financial and operational capacity requirements
  • Exact consortium size and composition requirements
  • Specific national eligibility conditions

Must check before shortlisting

  • Eligibility of applicant types and countries
  • Budget and funding conditions
  • Consortium requirements and coordination with European partnerships
  • TRL targets and expected outcomes

Money

Total budget around €13 million for 2 expected grants in 2026. Funding rate and lump sum conditions apply as per Horizon Europe rules.

  • Minimum contribution per grant — 6500000EUR
    Two grants expected
  • Total budget for this topic in 2026 — 13000000EUR
    Approximate total budget

Application notes

  • Single-stage submission model.
  • Proposal page limits and layout as per Annex A and E of Horizon Europe General Annexes.
  • Eligible countries listed in Annex B of Horizon Europe General Annexes.
  • Use of Copernicus and/or Galileo/EGNOS data if applicable.
  • Financial and operational capacity requirements as per Annex C.
  • Evaluation criteria and procedures as per Annex D and F.
  • Prepare proposal using the specific application form in the Submission System.
  • Submit proposal before the deadline 8 October 2026.
  • Ensure compliance with lump sum grant conditions.
  • Coordinate with European partnerships as required.
  • Legal entities established in China are not eligible for this destination.
  • Projects must report results to the CCAM European Partnership.
  • TRL 5-6 expected by project end.
  • Check specific consortium and eligibility rules in call documents.

Derived from official EU Funding portal source · updated 2 Jul 2026, 09:53 UTC. Use this as a shortlisting aid; the official call text remains authoritative.

Related calls

These funding calls are closely related and may be worth considering as part of the same funding landscape.

Official source text

Fine print from the EU source record. Expand when you need the original wording.

Topic description

Expected Outcome: Project results are expected to contribute to all the following expected outcomes: Availability and integration of advanced, trustworthy, energy-efficient perception systems, exploiting technological advancements of Generative AI (GenAI) to enhance situational awareness and support safe decision-making; Enhanced Vulnerable Road User (VRU) safety, based on elevated, more temper-proof perception and understanding of their behaviour and intention predictions; Enhanced robustness of CCAM systems - both on-board and on the infrastructure side - in critical situations due to their training, virtual testing and validation in scenarios generated by GenAI, complementing existing scenario databases for the testing and validation of CCAM systems; Enhanced understanding of the relevance and limitations of using GenAI for CCAM; Tools and harmonised approaches for the use of GenAI in mobility technology development, training and validation, as well as for systemic applications such as traffic management and remote control, integrating them into existing approaches. Scope: Pilots and demonstrations using Level 3 and 4 vehicle services face major challenges in perception and decision making, highlighting the necessity for low-latency solutions that enhance responsiveness and situational awareness in real-time operating conditions. This is especially relevant for driving in more complex environments like urban areas, where environmental variance is higher and where new scenarios can be regularly encountered. Furthermore, there is the need to limit the latency, bandwidth and energy use for on-board calculations, as well as the need to enhance the security, privacy and reliability (e.g. scene understanding and prediction of near-future scenario development). For rapid decision-making in interactions with VRUs, this is essential for implementing CCAM-enabled solutions and ensuring scalability. At the same time, developments of sector-agnostic technologies show advancements -such as GenAI- that can be beneficial for CCAM. First exploratory steps can be expected from a project funded under HORIZON-CL5-2023-D6-01-02 [1] regarding the potential in the virtual generation of edge cases, which could be used for the development, training, virtual testing and validation of CCAM systems. Further advancements in GenAI applications specifically for the CCAM domain need to be developed, trained and validated [2] . Thus, proposed actions shall include approaches to exploit further technological advancements for CCAM. Major steps are needed to advance to highly advanced, ultra-safe, trustworthy and energy efficient real-time perception and decision-making systems for automated vehicles, specifically focusing on scalable solutions and the exploitation of GenAI. These advancements should leverage low latency systems or distributed computing resources to facilitate real-time processing, thereby improving system responsiveness and safety. This topic will thus contribute to the AI Continent Action Plan [3] by fostering AI development and adoption in the automotive sector. Proposed actions are expected to address all the following aspects: Development of tools and approaches for robust environment perception and decision making (at the edge, on-board, at infrastructure or back-office). These approaches shall aim at accelerating and advancing the reasoning of decision making, increasing the level of efficiency, (cyber)-security and reliability of the applications, with path planning as initial use case. This is to support amongst others the perception of VRUs, the prediction of their behaviour and their intentions, and includes data sharing approaches for CCAM solutions to create a larger time window for actions in near accident scenarios. The use of advanced GenAI, including Large Language Models (LLMs), Vision Language Models (VLMs) or Vision Language Action (VLAs) can significantly enhance these capabilities by leveraging their advanced contextual reasoning and pattern recognition. Furthermore, GenAI can complement existing perception systems by improving sensory input interpretation and providing enriched environmental contexts, which enhance decision-making and adaptability. Scenario generation of interactions of CCAM enabled vehicles with other road users, which is essential for advances in validation and testing, extending existing datasets and scenarios as GenAI can, based on existing data, deliver variations of scenarios (e.g. cultural differences of road users and infrastructure variability.) Integration of GenAI technologies into existing approaches (development, training and validation) for their further enrichment. Understanding the limits of using GenAI technologies as well as the benefits and develop guidelines for valid approaches for this integration (including consideration of gender biases and fairness to ensure AI systems are transparent and accountable) and providing an outlook on the uptake of the tools and approaches developed can be done for a variety of CCAM components and technologies, as well as for systemic applications such as traffic management and remote control. Encouraging collaboration with the European Software-defined Vehicle (SDV) initiative by adopting existing interfaces and building blocks, and proposing new ones developed within the project for potential inclusion in the SDV framework. Proposed actions should include measures to ensure close coordination with the European Connected and Autonomous Vehicle Alliance (ECAVA) announced in the European Automotive Action Plan. This topic implements the co-programmed European Partnership on ‘Connected, Cooperative and Automated Mobility’ (CCAM). As such, projects resulting from this topic will be expected to report on results to the European Partnership ‘Connected, Cooperative and Automated Mobility’ (CCAM) in support of the monitoring of its KPIs. Projects funded under this topic are expected to liaise with the ADRA Partnership [4] in order to explore and leverage complementarities between their respective activities and findings. Projects resulting from this topic are expected to apply the European Common Evaluation Methodology (EU-CEM) for CCAM [5] . null Activities are expected to achieve TRL 5-6 by the end of the project – see General Annex B. [1] https://cordis.europa.eu/project/id/101146542 [2] This topic also encourages alignment with national projects and initiatives to allow building up of existing efforts and solutions. [3] https://digital-strategy.ec.europa.eu/en/library/ai-continent-action-plan [4] AI, Data and Robotics Association: https://adr-association.eu/ [5] See the evaluation methodology here .

Destination

This Destination includes activities addressing safe and smart mobility services for passengers and goods. This Destination contributes directly to the Strategic Plan’s Key Strategic Orientations ‘ Green transition ’, ‘ Digital transition ’ and ‘ A more resilient, competitive, inclusive and democratic Europe ’. In line with the Strategic Plan, the overall expected impact of this Destination is to contribute to the ‘Multimodal systems and services for climate-neutral, smart and safe mobility’ . The main impacts to be generated by topics under this Destination are: Connected, Cooperative and Automated Mobility (CCAM) Improved mobility for people and goods in all weather conditions, ensuring safe, shared, inclusive, affordable, attractive, and accessible door-to-door mobility, for private and public transport in mixed traffic and confined areas, as well as open roads. Seamless integration of CCAM solutions into existing transport ecosystems to ensure interoperability, promote multimodality, enhance traffic safety, catering to diverse user needs and behaviours. Resilient, climate-neutral, and sustainable mobility solutions with reduced carbon footprints, resulting in greener, less congested, cost-effective, and demand-responsive transport systems. Increased competitiveness of the transport system using secure and hyper-advanced technologies such as real-time perception, situational awareness, and decision-making systems, based on trustworthy Artificial Intelligence (including Edge and Generative AI), satellite navigation, smart traffic management, and tools for software development for CCAM applications. Multimodal and sustainable transport systems for passengers and goods Enhanced resilience of transport networks through improved operational efficiency for both passenger and intermodal freight transport, future-proofed mobility systems supporting EU competitiveness while ensuring affordable and accessible transport for all passengers. Safety and resilience Drastic reduction in road fatalities for all types of users, especially on rural areas Improved resilience of the public transport system via the use of AI Advanced technologies and methods for improved reliability in complex environments for aviation Legal entities established in China are not eligible to participate in both Research and Innovation Actions (RIAs) and Innovation Actions (IAs) falling under this destination. For additional information please see “Restrictions on the participation of legal entities established in China” found in General Annex B of the General Annexes.

Conditions and documents

General conditions

1. Admissibility Conditions: Proposal page limit and layout

described in Annex A and Annex E of the Horizon Europe Work Programme General Annexes.

Proposal page limits and layout: described in Part B of the Application Form available in the Submission System.

2. Eligible Countries

described in Annex B of the Work Programme General Annexes.

A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon Europe projects. See the information in the Horizon Europe Programme Guide.

3. Other Eligible Conditions

If projects use satellite-based earth observation, positioning, navigation and/or related timing data and services, beneficiaries must make use of Copernicus and/or Galileo/EGNOS (other data and services may additionally be used).

Subject to restrictions for the protection of European communication networks.

described in Annex B of the Work Programme General Annexes.

4. Financial and operational capacity and exclusion

described in Annex C of the Work Programme General Annexes.

5a. Evaluation and award: Award criteria, scoring and thresholds

are described in Annex D of the Work Programme General Annexes.

5b. Evaluation and award: Submission and evaluation processes

are described in Annex F of the Work Programme General Annexes and the Online Manual.

5c. Evaluation and award: Indicative timeline for evaluation and grant agreement

described in Annex F of the Work Programme General Annexes.

6. Legal and financial set-up of the grants

The granting authority may, up to 4 years after the end of the action, object to a transfer of ownership or to the exclusive licensing of results, as set out in the specific provision of Annex 5.

Eligible costs will take the form of a lump sum as defined in the Decision of 7 July 2021 authorising the use of lump sum contributions under the Horizon Europe Programme – the Framework Programme for Research and Innovation (2021-2027) – and in actions under the Research and Training Programme of the European Atomic Energy Community (2021-2025) [[This decision is available on the Funding and Tenders Portal, in the reference documents section for Horizon Europe, under ‘Simplified costs decisions’ or through this link: https://ec.europa.eu/info/funding-tenders/opportunities/docs/2021-2027/horizon/guidance/ls-decision_he_en.pdf]].

described in Annex G of the Work Programme General Annexes.

Specific conditions

Not applicable.

Support information

Online Manual is your guide on the procedures from proposal submission to managing your grant. Horizon Europe Programme Guide contains the detailed guidance to the structure, budget and political priorities of Horizon Europe. Funding & Tenders Portal FAQ – find the answers to most frequently asked questions on submission of proposals, evaluation and grant management. Research Enquiry Service – ask questions about any aspect of European research in general and the EU Research Framework Programmes in particular. National Contact Points (NCPs) – get guidance, practical information and assistance on participation in Horizon Europe. There are also NCPs in many non-EU and non-associated countries (‘third-countries’). Enterprise Europe Network – contact your EEN national contact for advice to businesses with special focus on SMEs. The support includes guidance on the EU research funding. IT Helpdesk – contact the Funding & Tenders Portal IT helpdesk for questions such as forgotten passwords, access rights and roles, technical aspects of submission of proposals, etc. European IPR Helpdesk assists you on intellectual property issues. CEN-CENELEC Research Helpdesk and ETSI Research Helpdesk – the European Standards Organisations advise you how to tackle standardisation in your project proposal. The European Charter for Researchers and the Code of Conduct for their recruitment – consult the general principles and requirements specifying the roles, responsibilities and entitlements of researchers, employers and funders of researchers. Partner Search help you find a partner organisation for your proposal.

Raw budget overview
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